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首页> 外文期刊>Analytica chimica acta >Application of permeation liquid membrane and scanned stripping chronopotentiometry to metal speciation analysis of colloidal complexes
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Application of permeation liquid membrane and scanned stripping chronopotentiometry to metal speciation analysis of colloidal complexes

机译:渗透液膜和扫描溶出计时电位法在胶体络合物金属形态分析中的应用

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摘要

The potential of permeation liquid membrane (PLM) to obtain dynamic metal speciation information for colloidal complexes is evaluated by measurements of lead(II) and copper(II) complexation by carboxyl modified latex nanospheres of different radii (15, 35, 40 and 65 nm). The results are compared with those obtained by a well characterized technique: stripping chronopotentiometry at scanned deposition potential (SSCP). Under the PLM conditions employed, and for large particles or macromolecular ligands, membrane diffusion is the rate-limiting step. That is, the flux is proportional to the free metal ion concentration with only a small contribution from labile complexes. In the absence of ligand aggregation in the PLM channels, good agreement was obtained between the stability constants determined by PLM and SSCP for both metals. (c) 2007 Elsevier B.V. All rights reserved.
机译:通过测量不同半径(15、35、40和65 nm的羧基)修饰的胶乳纳米球对铅(II)和铜(II)络合的测量,评估了渗透液膜(PLM)获得胶体络合物的动态金属形态信息的潜力。 )。将结果与通过良好表征的技术获得的结果进行比较:在扫描沉积电位(SSCP)处进行溶出计时电位法。在采用的PLM条件下,对于大颗粒或大分子配体,膜扩散是限速步骤。也就是说,通量与游离金属离子浓度成比例,而不稳定络合物的贡献很小。在PLM通道中不存在配体聚集的情况下,两种金属的PLM和SSCP测定的稳定性常数之间均获得了良好的一致性。 (c)2007 Elsevier B.V.保留所有权利。

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